首页> 美国卫生研究院文献>The Journal of Physiology >Modulation of the delayed rectifier K+ current by isoprenaline in bull-frog atrial myocytes.
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Modulation of the delayed rectifier K+ current by isoprenaline in bull-frog atrial myocytes.

机译:异丙肾上腺素对牛蛙心房肌细胞中延迟整流子K +电流的调节。

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摘要

1. The effects of isoprenaline (ISO) on the calcium current (ICa) and delayed rectifier K+ current (IK) were examined using a tight-seal whole-cell voltage-clamp technique in single cells from bull-frog atrium to examine the ionic mechanism(s) of catecholamine-induced action potential shape changes. 2. The effects of ISO on the action potential were dose-dependent. Very low doses (5 x 10(-9) M) prolonged the action potential. Higher doses (10(-6) M) of ISO increased the plateau height, but shortened the action potential by accelerating the early repolarization phase. 3. ISO increased IK and ICa in a dose-dependent fashion. Both of these effects were blocked by a beta-receptor antagonist, propranolol (3 x 10(-7) M). In contrast IK1, the inwardly rectifying K+ current, was not changed significantly by ISO. 4. The ISO-induced increase in IK was observed in the presence of CdCl2 (3 x 10(-4) M), indicating that this effect is not due to a Ca2(+)-activated potassium current. 5. The reversal potential of IK in normal Ringer solution (-83 +/- 2 mV) was not significantly changed by ISO. Thus, stimulation of the Na(+)-K+ pump and a consequent hyperpolarizing shift in EK are not responsible for the increase in IK. 6. In the presence of ISO (10(-6) M) the steady-state activation curve (n infinity) for IK was consistently shifted to more negative values (by approximately 10 mV). The activation and deactivation kinetics of IK were also changed by ISO: activation was accelerated, deactivation was slowed. These ISO-induced changes in IK result in an increase in IK at voltages corresponding to the plateau of the action potential. 7. ISO (10(-6) M) increased ICa dramatically, approximately 6-fold at 0 mV. At the same time, the time constant of ICa inactivation decreased significantly (34 +/- 4 ms control; 23 +/- 4 ms ISO). 8. These results confirm that low doses of sympathetic agonists acting via beta-receptors increase ICa. Relatively high doses of beta-receptor agonists increase both ICa and IK, but these two effects appear to be generated by different biophysical mechanisms. 9. These dose-dependent changes in ICa and IK can explain the observed ISO-induced changes in action potential shape. At doses of approximately 10(-8) M ICa is increased, resulting in a more depolarized plateau and small lengthening of the action potential.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.使用密闭全细胞电压钳技术在牛蛙心房的单个细胞中检测了异戊二烯(ISO)对钙电流(ICa)和延迟整流器K +电流(IK)的影响儿茶酚胺诱导的动作电位形状变化的机制。 2. ISO对动作电位的影响是剂量依赖性的。非常低的剂量(5 x 10(-9)M)延长了动作电位。较高的ISO(10(-6)M)剂量增加了高原高度,但通过加速早期复极化阶段缩短了动作电位。 3. ISO以剂量依赖性方式增加IK和ICa。这两种作用均被β受体拮抗剂普萘洛尔(3 x 10(-7)M)阻断。相反,向内整流的K +电流IK1没有被ISO显着改变。 4.在CdCl2(3 x 10(-4)M)存在下观察到ISO诱导的IK升高,表明该效应并非归因于Ca2(+)活化的钾电流。 5.正常林格溶液(-83 +/- 2 mV)中IK的逆转电势没有被ISO明显改变。因此,Na(+)-K +泵的刺激和随之而来的EK超极化转变与IK的增加无关。 6.在存在ISO(10(-6)M)的情况下,IK的稳态激活曲线(n个无穷大)始终移至更多的负值(大约10 mV)。 IK的激活和失活动力学也被ISO所改变:激活被加速,失活被减慢。这些由ISO引起的IK变化会导致在对应于动作电位平台的电压下IK升高。 7. ISO(10(-6)M)显着提高了ICa,在0 mV时约为6倍。同时,ICa失活的时间常数显着降低(控制为34 +/- 4毫秒; ISO为23 +/- 4毫秒)。 8.这些结果证实,低剂量的通过β受体起作用的交感神经激动剂会增加ICa。相对较高剂量的β受体激动剂会同时增加ICa和IK,但这两种作用似乎是由不同的生物物理机制产生的。 9. ICa和IK中这些剂量依赖性的变化可以解释观察到的ISO诱导的动作电位形状变化。在大约10(-8)M的剂量下,ICa会增加,从而导致更多的去极化平台和较小的动作电位延长。(摘要截断为400字)

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